Convenient dismounting structure of mold for electrically fused zirconia-alumina brick

With its convenient assembly and disassembly structure and synchronous control system, the system enables the simultaneous clamping and cleaning of multiple sets of electrofused zirconia-corundum brick molds, solving the problems of individual mold clamping and impurity removal in existing technologies, and improving operational efficiency and mold stability.

CN224310866UActive Publication Date: 2026-06-02ZHENGZHOU WEITONG FUSED CAST NEW MATERIALS TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU WEITONG FUSED CAST NEW MATERIALS TECH CO LTD
Filing Date
2025-06-24
Publication Date
2026-06-02

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Abstract

The utility model discloses a kind of electrically fused zirconia corundum brick mould portable dismounting structure, including bottom plate, the upper portion of bottom plate is equipped with multiple groups of concave seats, the lower portion of bottom plate is equipped with through groove, and the lower portion of through groove is equipped with moving box, the lower portion of bottom plate is equipped with four groups of support column, the lower end of four groups of support column is equipped with first self-locking universal wheel, the lower portion of moving box is equipped with four groups of second self-locking universal wheel, the inside of multiple groups of concave seats is equipped with bidirectional screw lever by bearing, the side wall of multiple groups of bidirectional screw lever is equipped with two groups of screw sleeve, the side wall of two groups of screw sleeve in same side is fixedly sleeved with sleeve plate, the inside of multiple groups of concave seats is equipped with cross plate. Advantageous effects: the utility model adopts concave seat, through the concave seat of setting, multiple electrically fused zirconia corundum brick mould can be simultaneously clamped, improve the use practicality of electrically fused zirconia corundum brick mould portable dismounting structure.
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Description

Technical Field

[0001] This utility model relates to the field of electrofused zirconia-corundum brick production technology, specifically to a convenient disassembly and assembly structure for electrofused zirconia-corundum brick molds. Background Technology

[0002] Fused zirconia-corundum bricks are white solids formed by melting pure alumina powder and zircon sand containing approximately 65% ​​zirconium oxide and 34% silica in an electric furnace, then pouring the mixture into a mold and cooling it. They are mainly used in high-temperature industrial kilns. In actual production, fused zirconia-corundum brick molds are required. To ensure the stability of the molds, a detachable structure is needed to clamp them. In practice, this method offers advantages such as ease of operation, structural stability, and good clamping effect.

[0003] The prior art discloses a fixing clamp for an electrofused zirconia alumina brick production mold with application number CN201920369179.6. The above-mentioned utility model can only clamp or disassemble one set of electrofused zirconia alumina brick molds at a time. The clamping or disassembly of multiple electrofused zirconia alumina brick molds needs to be performed sequentially, which reduces the practicality of this utility model. At the same time, when there are adsorbed impurities in the electrofused zirconia alumina bricks, it is easy to cause damage to the clamping structure and the electrofused zirconia alumina brick mold, which brings hidden dangers to the installation and clamping of this utility model.

[0004] There are currently no effective solutions to the problems in the relevant technologies. Utility Model Content

[0005] (a) Technical problems to be solved

[0006] To address the shortcomings of existing technologies, this utility model provides a convenient assembly and disassembly structure for fused zirconia-corundum brick molds. This structure has the advantages of simultaneously clamping multiple fused zirconia-corundum brick molds and removing impurities adsorbed on the surface of the molds, thereby solving the problems mentioned in the background technology.

[0007] (II) Technical Solution

[0008] To achieve the advantages of simultaneously clamping multiple fused zirconia-corundum brick molds and removing impurities adsorbed on the surface of the fused zirconia-corundum brick molds, the specific technical solution adopted by this utility model is as follows:

[0009] A convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold includes a base plate. Multiple sets of concave seats are mounted on the upper part of the base plate. A through groove is formed in the lower part of the base plate, and a movable box is installed below the through groove. Four sets of support columns are mounted on the lower part of the base plate, and each of the four sets of support columns is equipped with a first self-locking universal wheel at its lower end. Four sets of second self-locking universal wheels are mounted on the lower part of the movable box. Each of the multiple sets of concave seats has a bidirectional screw lever installed inside via bearings. Each sidewall of the bidirectional lead screw lever is fitted with two sets of lead screw sleeves. Each sidewall of the two sets of lead screw sleeves on the same side is fixedly fitted with a connecting plate. Each set of concave seats has a horizontal plate installed inside, and each set of horizontal plates has a limiting groove on its upper part. Each set of limiting grooves has two sets of I-shaped sliders that slide through it. Each set of connecting plates on the same side is fixedly connected to each set of I-shaped sliders on the same side. Each set of I-shaped sliders on the same side has a clamping plate installed on its upper part. The upper part of each set of clamping plates on the same side... Each part is provided with an internal groove. On both sides of the internal grooves of the two sets of internal grooves on the same side, mounting plates are installed. T-shaped rods slide through the interior of the four sets of mounting plates on the same side. Lifting plates are installed at the upper ends of the two sets of T-shaped rods on the same side. First electric telescopic rods are installed on the bottom surface of the internal grooves of the two sets of internal grooves on the same side. The telescopic ends of the first electric telescopic rods on the two sets of internal grooves on the same side are fixedly connected to the lower parts of the two sets of lifting plates on the same side. Connecting shafts are installed between adjacent sets of bidirectional lead levers. Mounting boxes are sleeved on the side walls of multiple sets of connecting shafts via bearings. Multiple sets of mounting boxes are fixedly connected to the upper part of the base plate. Self-locking forward and reverse motors are installed on the upper parts of multiple sets of mounting boxes. First bevel gears are sleeved on the output ends of multiple sets of self-locking forward and reverse motors. Second bevel gears are sleeved on the side walls of multiple sets of connecting shafts. An electrical control box is installed on the side wall of the base plate, and a first control panel, a first synchronous controller, and a first battery are installed inside the electrical control box.

[0010] Furthermore, the two sets of bidirectional lead levers on the same side are engaged with the two sets of lead screw threads on the same side.

[0011] Furthermore, multiple sets of the first bevel gears mesh with multiple sets of the second bevel gears.

[0012] Furthermore, an air storage plate is installed inside the through-slot, and multiple high-pressure nozzles are installed at the lower part of the air storage plate. An air pump is installed at the upper part of the air storage plate, and an air guide pipe is connected to the output end of the air pump, with one end of the air guide pipe inserted into the interior of the air storage plate. Two sets of collection boxes are installed at the lower part of the base plate, and a fan passes through the lower part of each of the two sets of collection boxes. A filter screen is installed inside each of the two sets of collection boxes, and a dust collection pipe passes through the upper end of each of the two sets of collection boxes, with one end of each dust collection pipe inserted into the interior of the through-slot. Both sets of collection boxes have cleaning ports on their outer walls, and both sets of cleaning ports are fitted with sealing plugs. Two sets of second electric telescopic rods pass through the top surface of the mobile box, and the telescopic ends of the two sets of second electric telescopic rods are equipped with support seats. A second battery and a second synchronous controller are installed inside the mobile box. A second control panel is installed on the side wall of the mobile box. A sealing door and a wire hole are installed on the end face of the mobile box. The air pump and the two sets of fans are electrically connected to the first control panel via wires.

[0013] Furthermore, the second control panel is electrically connected to the second battery and the second synchronization controller via wires, and the second synchronization controller is electrically connected to the two sets of the second electric telescopic poles via wires.

[0014] Furthermore, the first control panel is electrically connected to the first battery, multiple sets of the first electric telescopic rods, and the first synchronization controller via wires. The first synchronization controller is electrically connected to multiple sets of the self-locking forward and reverse motors via wires.

[0015] (III) Beneficial Effects

[0016] Compared with the prior art, this utility model provides a convenient disassembly and assembly structure for fused zirconia-corundum brick molds, which has the following advantages:

[0017] (1) This utility model adopts a concave seat. In actual use, when using the convenient disassembly and assembly structure of the fused zirconia corundum brick mold, multiple sets of fused zirconia corundum brick molds can be placed on multiple sets of horizontal plates. Then, using the control panel, through the first synchronous controller, multiple sets of self-locking forward and reverse motors can work synchronously. The output ends of the multiple sets of self-locking forward and reverse motors can drive multiple sets of first bevel gears to rotate. Since multiple sets of first bevel gears and multiple sets of second bevel gears mesh with each other, the rotating multiple sets of first bevel gears can drive multiple sets of second bevel gears to rotate. The rotating multiple sets of second bevel gears can drive multiple sets of bidirectional screw levers to rotate through multiple sets of connecting shafts. Since one set of bidirectional screw levers on the same side is threadedly engaged with two sets of screw sleeves on the same side, the rotating one set of bidirectional screw levers on the same side can push the two sets of screw sleeves on the same side to move closer to each other. The two sets of screw sleeves on the same side can make the two sets of clamping plates on the same side move towards each other through the two sets of sleeve plates and the two sets of I-shaped sliders on the same side. When the two sets of clamping plates on the same side move towards each other, the two sets of clamping plates on the same side will move towards each other. When clamping the fused zirconia-alumina brick mold, the control panel is used to shorten multiple sets of first electric telescopic rods, allowing multiple lifting plates to move down and press down on the fused zirconia-alumina brick molds. This completes the clamping of the fused zirconia-alumina brick molds. When it is necessary to disassemble the fused zirconia-alumina brick molds, the first control panel is used to cause the output ends of multiple self-locking forward and reverse motors to rotate in the opposite direction via the first synchronous controller. At this time, the two clamping plates on the same side can be reset in the opposite direction. Then, the control panel is used to extend multiple sets of first electric telescopic rods, allowing multiple lifting plates to move up and reset. With the clamping of multiple clamping plates and the pressing of multiple lifting plates removed, multiple fused zirconia-alumina brick molds can be disassembled. The four mounting hole plates and four T-shaped rods on the same side ensure the stability of the up and down movement of the two lifting plates on the same side. The concave seat can clamp multiple fused zirconia-alumina brick molds simultaneously, improving the usability and practicality of the convenient disassembly and assembly structure of the fused zirconia-alumina brick molds.

[0018] (2) This utility model employs a through-groove and a movable box. Before installing multiple sets of fused zirconia-corundum brick molds, the molds can be placed on a support base. Then, four sets of second self-locking casters are used to move the movable box. When the movable box is directly below the through-groove, the second control panel, through two sets of second synchronous controllers, synchronously extends two sets of second electric telescopic rods, allowing the support base to move upwards into the through-groove. Afterwards, the first control panel is used to operate two sets of fans, allowing air to enter the air storage pan through the air guide pipe. This portion of air is then sprayed out through multiple sets of high-pressure nozzles. The sprayed air can blow off the adsorbed substances on the surface of multiple sets of fused zirconia-corundum brick molds. Two sets of fans can draw the detached adsorbed substances and air into the interior of two sets of collection boxes through two sets of dust collection pipes. The adsorbed substances will be intercepted by two sets of filter screens, and the air can be discharged through two sets of fans. After removing two sets of sealing plugs, the two sets of filter screens can be cleaned through two sets of cleaning ports. Through the set through grooves and moving boxes, the impurities adsorbed on the surface of the fused zirconia-corundum brick molds can be removed, ensuring the continued use of the convenient disassembly and assembly structure of the fused zirconia-corundum brick molds. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of a convenient disassembly and assembly structure for an electrofused zirconia corundum brick mold proposed in this utility model.

[0021] Figure 2 This is a front view of a convenient disassembly and assembly structure for an electrofused zirconia corundum brick mold proposed in this utility model;

[0022] Figure 3 This is a perspective view of the horizontal plate proposed in this utility model;

[0023] Figure 4 This utility model proposes Figure 1 Enlarged view of A in the middle;

[0024] Figure 5 This utility model proposes Figure 1 Enlarged view of B in the middle;

[0025] Figure 6 This utility model proposes Figure 1 A magnified view of C.

[0026] In the picture:

[0027] 1. Base plate; 2. Concave seat; 3. Through slot; 4. Moving box; 5. Two-way lead lever; 6. Lead screw sleeve; 7. Connecting plate; 8. Horizontal plate; 9. Limiting through slot; 10. I-shaped slider; 11. Clamping plate; 12. Internal slot; 13. Mounting hole plate; 14. T-shaped rod; 15. First electric telescopic rod; 16. Lifting plate; 17. Connecting shaft; 18. Mounting box; 19. First bevel gear; 20. Self-locking forward and reverse motor; 21. Second bevel gear; 22. Second electric telescopic rod; 23. Support seat; 24. First self-locking universal wheel; 25. Second self-locking universal wheel; 26. Air storage tray; 27. Air pump; 28. Collection box; 29. ​​Dust collection pipe; 30. Filter screen; 31. Fan; 32. Cleaning port; 33. Sealing plug. Detailed Implementation

[0028] To further illustrate the various embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. These drawings are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementation methods and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0029] According to an embodiment of the present invention, a convenient disassembly and assembly structure for an electrofused zirconia corundum brick mold is provided.

[0030] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments, such as... Figure 1-6 As shown, a convenient disassembly and assembly structure for an electrofused zirconia corundum brick mold according to an embodiment of this utility model includes a base plate 1. Multiple sets of concave seats 2 are installed on the upper part of the base plate 1. A through groove 3 is opened on the lower part of the base plate 1, and a movable box 4 is installed below the through groove 3. Four sets of support columns are installed on the lower part of the base plate 1, and each of the four sets of support columns has a first self-locking universal wheel 24 installed at its lower end. Four sets of second self-locking universal wheels 25 are installed on the lower part of the movable box 4. Bidirectional screw levers 5 are installed inside the multiple sets of concave seats 2 via bearings. The sides of the multiple sets of bidirectional screw levers 5... Each wall is fitted with two sets of lead screw sleeves 6. Each side wall of the two sets of lead screw sleeves 6 on the same side is fixedly fitted with a connecting plate 7. Multiple sets of concave seats 2 each have a horizontal plate 8 installed inside. Each set of horizontal plates 8 has a limiting groove 9 on its upper part. Two sets of I-shaped sliders 10 slide through the interior of each set of limiting grooves 9. Each set of connecting plates 7 on the same side is fixedly connected to each set of I-shaped sliders 10 on the same side. Each set of I-shaped sliders 10 on the same side has a clamping plate 11 installed on its upper part. Each set of clamping plates 11 on the same side has an internal groove 12 on its upper part. Both sides of the internal grooves 12 on the same side are fitted with... The system is equipped with mounting plates 13. T-shaped rods 14 slide through the interior of four sets of mounting plates 13 on the same side. Lifting plates 16 are installed at the upper ends of two sets of T-shaped rods 14 on the same side. First electric telescopic rods 15 are installed on the bottom surfaces of two sets of internal grooves 12 on the same side. The telescopic ends of the two sets of first electric telescopic rods 15 on the same side are fixedly connected to the lower parts of the two sets of lifting plates 16 on the same side. Connecting shafts 17 are installed between adjacent sets of bidirectional screw levers 5. Mounting boxes 18 are sleeved on the side walls of multiple sets of connecting shafts 17 via bearings. Multiple mounting boxes 18 are connected to the upper part of the base plate 1. The upper part of multiple mounting boxes 18 is equipped with a self-locking forward and reverse motor 20, and the output end of each self-locking forward and reverse motor 20 is fitted with a first bevel gear 19. The side wall of each connecting shaft 17 is fitted with a second bevel gear 21. An electrical control box is installed on the side wall of the base plate 1, and the electrical control box contains a first control panel, a first synchronization controller and a first storage battery. Through the concave seat 2, multiple fused zirconia corundum brick molds can be clamped simultaneously, improving the usability and practicality of the convenient disassembly and assembly structure of the fused zirconia corundum brick mold.

[0031] In one embodiment, a set of bidirectional lead screw levers 5 on the same side and two sets of lead screw sleeves 6 on the same side are threaded together to facilitate adjustment of the usage position of the two sets of lead screw sleeves 6 on the same side.

[0032] In one embodiment, multiple sets of first bevel gears 19 mesh with multiple sets of second bevel gears 21 to ensure that the multiple sets of first bevel gears 19 can drive the multiple sets of second bevel gears 21 to rotate.

[0033] In one embodiment, an air storage plate 26 is installed inside the through-groove 3, and multiple high-pressure nozzles are installed at the lower part of the air storage plate 26. An air pump 27 is installed at the upper part of the air storage plate 26, and an air guide pipe is connected to the output end of the air pump 27. One end of the air guide pipe is inserted into the interior of the air storage plate 26. Two sets of collection boxes 28 are installed at the lower part of the base plate 1, and a fan 31 passes through the lower part of each set of collection boxes 28. A filter screen 30 is installed inside each set of collection boxes 28. A dust collection pipe 29 passes through the upper end of each set of collection boxes 28, and one end of each set of dust collection pipe 29 is inserted into the interior of the through-groove 3. A cleaning port 32 is opened on the outer wall of each set of collection boxes 28. Each cleaning port 32 has a sealing plug 33 inserted inside. Two sets of second electric telescopic rods 22 pass through the top surface of the inside of the mobile box 4, and support seats 23 are installed at the telescopic ends of the two sets of second electric telescopic rods 22. A second battery and a second synchronous controller are installed inside the mobile box 4. A second control panel is installed on the side wall of the mobile box 4. A sealing door and a wire hole are installed on the end face of the mobile box 4. The air pump 27 and two sets of fans 31 are electrically connected to the first control panel through wires. Through the set through slot 3 and mobile box 4, impurities adsorbed on the surface of the fused zirconia corundum brick mold can be removed, ensuring the continued use of the convenient disassembly and assembly structure of the fused zirconia corundum brick mold.

[0034] In one embodiment, the second control panel is electrically connected to the second battery and the second synchronization controller via wires. The second synchronization controller is electrically connected to two sets of second electric telescopic rods 22 via wires. The control circuit of the second control panel can be implemented by simple programming by those skilled in the art and is common knowledge in the art. It is only used and not modified, so the control method and circuit connection will not be described in detail.

[0035] In one embodiment, the first control panel is electrically connected to the first battery, multiple sets of first electric telescopic rods 15 and the first synchronous controller via wires. The first synchronous controller is electrically connected to multiple sets of self-locking forward and reverse motors 20 via wires. The control circuit of the first control panel can be implemented by simple programming by those skilled in the art and is common knowledge in the art. It is only used and not modified, so the control method and circuit connection will not be described in detail.

[0036] Working principle:

[0037] In practical use of the convenient assembly and disassembly structure for fused zirconia-corundum brick molds, multiple sets of fused zirconia-corundum brick molds can be placed on multiple sets of horizontal plates 8. Then, using the control panel and the first synchronous controller, multiple sets of self-locking forward and reverse motors 20 can work synchronously. The output ends of the multiple sets of self-locking forward and reverse motors 20 can drive multiple sets of first bevel gears 19 to rotate. Since the multiple sets of first bevel gears 19 mesh with multiple sets of second bevel gears 21, the rotating multiple sets of first bevel gears 19 can drive the multiple sets of second bevel gears 21 to rotate. The rotating multiple sets of second bevel gears 21 can drive multiple sets of bidirectional lead levers 5 to rotate through multiple sets of connecting shafts 17. Since one set of bidirectional lead levers 5 on the same side is threadedly engaged with two sets of lead screw sleeves 6 on the same side, the rotating set of bidirectional lead levers 5 on the same side can drive the two sets of lead screw sleeves 6 on the same side. When the lever sleeves 6 approach each other, the two sets of lead screw sleeves 6 on the same side can move the two sets of clamping plates 11 on the same side in opposite directions through the two sets of connecting plates 7 and the two sets of I-shaped sliders 10 on the same side. When the two sets of clamping plates 11 on the same side clamp a set of fused zirconia-alumina brick molds, the control panel is used to shorten multiple sets of first electric telescopic rods 15, and multiple sets of lifting plates 16 can move down to press down on multiple sets of fused zirconia-alumina brick molds respectively. At this time, the clamping work of the fused zirconia-alumina brick molds is completed. When it is necessary to disassemble the fused zirconia-alumina brick molds, the first control panel is used to make the output ends of multiple sets of self-locking forward and reverse motors 20 rotate in the opposite direction through the first synchronous controller. At this time, the two sets of clamping plates 11 on the same side can be reset in the opposite direction. Then, the control panel is used to extend multiple sets of first electric telescopic rods 15, which can make multiple sets of lifting plates 16 move up to reset. With the removal of the clamping force of multiple sets of clamping plates 11 and the pressing force of multiple sets of lifting plates 16, multiple sets of fused zirconia alumina brick molds can be disassembled. The four sets of mounting hole plates 13 and four sets of T-shaped rods 14 on the same side can ensure the stability of the vertical movement of the two sets of lifting plates 16 on the same side. Through the set concave seat 2, multiple fused zirconia alumina brick molds can be clamped simultaneously, improving the usability of the convenient disassembly and assembly structure of fused zirconia alumina brick molds. At the same time, before installing multiple sets of fused zirconia alumina brick molds, multiple sets of fused zirconia alumina brick molds can be placed on the support base 23, and then the moving box 4 can be moved using four sets of second self-locking universal wheels 25. When the moving box 4 is moved directly below the through groove 3, the two sets of second electric telescopic rods can be extended synchronously using the second control panel and two sets of second synchronous controllers. 22. The support base 23 can be moved upwards into the interior of the through groove 3. Then, using the first control panel, the air pump 27 can operate with two sets of fans 31. The air pump 27 can allow air to enter the interior of the air storage plate 26 through the air guide pipe. This air is then sprayed out through multiple sets of high-pressure nozzles. The sprayed air can blow off the adsorbed material on the surface of multiple sets of fused zirconia corundum brick molds. The two sets of fans 31 can draw the detached adsorbed material and air into the interior of two sets of collection boxes 28 through two sets of dust collection pipes 29. The adsorbed material will be intercepted by two sets of filter screens 30, and the air can be discharged through the two sets of fans 31. The two sets of sealing plugs 33 can be removed, and the two sets of filter screens 30 can be cleaned through two sets of cleaning ports 32. Through the through groove 3 and the moving box 4, the impurities adsorbed on the surface of the fused zirconia corundum brick mold can be removed.This ensures the continued use of the convenient assembly and disassembly structure for fused zirconia-corundum brick molds.

[0038] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0039] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold, characterized in that, The system includes a base plate (1), on the upper part of which multiple sets of concave seats (2) are installed. A through groove (3) is provided on the lower part of the base plate (1), and a movable box (4) is installed below the through groove (3). Four sets of support columns are installed on the lower part of the base plate (1), and the lower ends of the four sets of support columns are each equipped with a first self-locking universal wheel (24). Four sets of second self-locking universal wheels (25) are installed on the lower part of the movable box (4). The interior of each set of concave seats (2) is equipped with a double-acting screw lever (5) through bearings. The side walls of each set of double-acting screw lever (5) are each fitted with two sets of screw rods. The sleeve (6) has two sets of lead screw sleeves (6) on the same side, and each set of the two sets of lead screw sleeves (6) has a connecting plate (7) fixedly connected to its side wall. Each set of concave seats (2) has a horizontal plate (8) installed inside. Each set of horizontal plates (8) has a limiting groove (9) on its upper part. Each set of limiting grooves (9) has two sets of I-shaped sliders (10) slidingly passing through its interior. Each set of connecting plates (7) on the same side is fixedly connected to each set of I-shaped sliders (10) on the same side. Each set of I-shaped sliders (10) on the same side has a clamping plate (11) installed on its upper part. Each set of clamping plates (11) on the same side has an internal groove (1) on its upper part. 2) Mounting plates (13) are installed on both sides of the interior of the two sets of built-in grooves (12) on the same side. T-shaped rods (14) slide through the interior of the four sets of mounting plates (13) on the same side. Lifting plates (16) are installed at the upper ends of the two sets of T-shaped rods (14) on the same side. First electric telescopic rods (15) are installed on the bottom surface of the interior of the two sets of built-in grooves (12) on the same side. The telescopic ends of the two sets of first electric telescopic rods (15) on the same side are fixedly connected to the lower part of the two sets of lifting plates (16) on the same side. A connecting shaft (17) is installed between the two sets of bidirectional screw levers (5) on adjacent sides. Each of the multiple sets of connecting shafts (17) has a mounting box (18) sleeved on its sidewall via bearings. Each of the multiple sets of mounting boxes (18) is fixedly connected to the upper part of the base plate (1). Each of the multiple sets of mounting boxes (18) has a self-locking forward and reverse motor (20) installed on its upper part. Each of the multiple sets of self-locking forward and reverse motors (20) has a first bevel gear (19) sleeved on its output end. Each of the multiple sets of connecting shafts (17) has a second bevel gear (21) sleeved on its sidewall. An electrical control box is installed on the sidewall of the base plate (1). The electrical control box contains a first control panel, a first synchronous controller, and a first storage battery.

2. The convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold according to claim 1, characterized in that, The two sets of bidirectional screw levers (5) on the same side are threadedly engaged with the two sets of screw sleeves (6) on the same side.

3. The convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold according to claim 1, characterized in that, Multiple sets of the first bevel gears (19) mesh with multiple sets of the second bevel gears (21).

4. The convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold according to claim 1, characterized in that, An air storage plate (26) is installed inside the through groove (3), and multiple high-pressure nozzles are installed at the lower part of the air storage plate (26). An air pump (27) is installed at the upper part of the air storage plate (26), and an air guide pipe is connected to the output end of the air pump (27). One end of the air guide pipe is inserted into the interior of the air storage plate (26). Two collection boxes (28) are installed at the lower part of the base plate (1), and a fan (31) runs through the lower part of each of the two collection boxes (28). A filter screen (30) is installed inside each of the two collection boxes (28). A dust collection pipe (29) runs through the upper end of each of the two collection boxes (28), and one end of each dust collection pipe (29) is inserted into the through groove. Inside (3), the outer walls of the two sets of collection boxes (28) are provided with cleaning ports (32), and the interiors of the two sets of cleaning ports (32) are each fitted with a sealing plug (33). The top surface of the interior of the mobile box (4) is permeated by two sets of second electric telescopic rods (22), and the telescopic ends of the two sets of second electric telescopic rods (22) are equipped with support seats (23). The interior of the mobile box (4) is equipped with a second battery and a second synchronous controller. The side wall of the mobile box (4) is equipped with a second control panel. The end face of the mobile box (4) is equipped with a sealing door and a wire hole. The air pump (27) and the two sets of fans (31) are electrically connected to the first control panel via wires.

5. The convenient disassembly and assembly structure for an electrofused zirconia-corundum brick mold according to claim 4, characterized in that, The second control panel is electrically connected to the second battery and the second synchronization controller via wires. The second synchronization controller is electrically connected to the two sets of the second electric telescopic rods (22) via wires.

6. The convenient assembly and disassembly structure for an electrofused zirconia-corundum brick mold according to claim 1, characterized in that, The first control panel is electrically connected to the first battery, multiple sets of the first electric telescopic rods (15) and the first synchronous controller via wires. The first synchronous controller is electrically connected to multiple sets of the self-locking forward and reverse motors (20) via wires.